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DEVELOPMENT OF A WATER INJECTION SYSTEM FUSIBLE PLUG FOR SEVERE ACCIDENTS AT NUCLEAR POWER PLANTS

机译:核电厂严重事故的水注水系统令人震惊的插头

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Background When terminal stage of Severe Accident (SA) with no coolant injection at a nuclear power plant, the equipment that has cooled and solidified through water injection to a molten core that has ex-vessel and fallen outside of the pressure vessel will then be required to operate autonomously by heat detection, without external signals or power (e.g. electricity, air). The fusible plug operation is triggered by fusible alloy which receives heat from molten core and will melt. Because the fusible plug is also the boundary of Suppression Pool (S/P), high reliability is required for sealing performance. It is for that reason that Hitachi GE Nuclear Energy Ltd. (Hitachi-GE) has developed a fusible plug to serve as a device necessary to operate this system. Features of the Fusible Plug The autonomous operation of the fusible plug is triggered by the melting of a fusible alloy, which is part of the fusible plug. However, the fusible alloy has a remarkably low mechanical strength and therefore is not suitable as a strength member. As such, it is necessary to ensure reliable plug sealing without applying a load to the fusible alloy so as to prevent the fusible plug from malfunctioning during normal operation. Therefore, to reduce the load to be applied to the fusible alloy, Hitachi-GE has developed a fusible plug structure that operates autonomously by detecting the ambient temperature without using the fusible alloy as a strength member. We have performed a verification test using this fusible plug and confirmed that it satisfies the predetermined performance requirements. Future Actions Hitachi-GE is holding discussions on using the fusible plug at nuclear power plants in Japan. In the future, we plan to expand to the overseas.
机译:背景技术当核电厂没有冷却剂注射的严重事故(SA)的终端时,通过注水到具有导管的熔融核心并将其固化的设备将需要通过热检测自主操作,没有外部信号或功率(例如电力,空气)。可熔插头操作由熔核从熔融核心接收热量并将熔化。因为可熔塞也是抑制池的边界(S / P),所以需要高可靠性来密封性能。因此,日立GE核能有限公司(Hitachi-GE)开发了一种可稳定的插头,可以作为操作该系统所需的设备。可熔塞的特点是熔炉的自主操作通过熔断合金的熔化触发,这是可熔塞的一部分。然而,熔种合金具有非常低的机械强度,因此不适合作为强度构件。因此,有必要确保可靠的插头密封,而不将负载施加到可熔合金,以防止在正常操作期间防止可熔断堵塞发生故障。因此,为了减少适用于熔种合金的负荷,Hitachi-Ge开发了一种可熔化的插头结构,其通过检测环境温度而不使用可熔合合金作为强度构件来自主地操作。我们使用该令人担忧的插头进行了验证测试,并确认它满足预定的性能要求。未来行动日立 - 葛正在举行讨论日本核电站的可熔断塞。在未来,我们计划扩展到海外。

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